Please use this identifier to cite or link to this item: https://repositorio.inpa.gov.br/handle/1/19670
Title: Electrophoretic patterns of hemoglobin and oxygen binding properties of blood of Anostomidae fishes from Parana‐Pardo‐Grande hydrographic basin (São Paulo State, Brazil)
Authors: Val, Vera Maria Fonseca Almeida e
Schwantes, Arno Rudi
Val, Adalberto Luis
Keywords: Hemoglobin
Hemoglobin
Oxygen
Oxyhemoglobin
Animals Cell
Animals Experiment
Blood And Hemopoietic System
Bohr Effect
Electrophoresis
Fish
Nonhuman
Oxygen Affinity
Priority Journal
Animals
Blood
Comparative Study
Isolation And Purification
Kinetics
Metabolism
Ph
Species Difference
Animals
Comparative Study
Fishes
Hemoglobins
Hydrogen-ion Concentration
Kinetics
Oxygen
Oxyhemoglobins
Species Specificity
Support, Non-u.S. Gov't
Issue Date: 1985
metadata.dc.publisher.journal: Journal of Experimental Zoology
metadata.dc.relation.ispartof: Volume 235, Número 1, Pags. 21-26
Abstract: The electrophoretic patterns of hemoglobin (Hb) and the functional properties of blood of seven migratory fish species, in two different kinds of habitat during both the rainy and dry seasons, were studied. All species showed multiple hemoglobins and very similar electrophoretic patterns except for Schizodon nasutus, which showed two cathodal components. The functional properties of blood reflect those electrophoretic patterns, since all species showed very little or no Bohr effect during each situation studied. Data on Leporinus obtusidens blood (during the rainy season), from both lotic and lentic environments, showed a normal Bohr effect (ϕ = −0.073). Similarly, Schizodon nasutus and Leporinus friderici from a lotic environment during the dry season were compared and showed a reverse Bohr effect (ϕ=0.042). In the other 14 situations, only Leporinus elongatus from a lentic environment during the rainy season showed a statistically significant difference in log P50 values from the other fishes. Copyright © 1985 Wiley‐Liss, Inc., A Wiley Company
metadata.dc.identifier.doi: 10.1002/jez.1402350104
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